AIR-AP1815W-N-K9 Cisco 1815W 802.11a/g/n/ac Wave 2 Access Point
AIR-AP1815W-N-K9
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AIR-AP1815W-N-K9 Cisco 1815W 802.11a/g/n/ac Wave 2 Access Point product image

AIR-AP1815W-N-K9 Cisco 1815W 802.11a/g/n/ac Wave 2 Access Point

AIR-AP1815W-N-K9

AIR-AP1815W-N-K9 is a Cisco Aironet 1815w wall-plate 802.11ac Wave 2 access point with integrated antennas, concurrent 2.4-GHz and 5-GHz 2x2 radios, three local Gigabit ports, regulatory-domain token N and a controller-based K9 order.

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AIR-AP1815W-N-K9 Cisco 1815W 802.11a/g/n/ac Wave 2 Access Point
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AIR-AP1815W-N-K9 Overview

AIR-AP1815W-N-K9 exact wall-plate order

AIR-AP1815W-N-K9 is a compact Cisco Aironet 1815w access point for wall or junction-box installation in hospitality, residence and multi-dwelling environments. It supports concurrent 2.4-GHz and 5-GHz 2x2 radios with two spatial streams and integrated antennas.

Software order boundary

Cisco defines AIR-AP1815W-x-K9 as the dual-band controller-based 802.11ac Wave 2 order. Record the target WLC, supported release, discovery path, entitlement and successful CAPWAP join.

N regulatory evidence

The domain letter is an ordering identifier, not a country name. For the N-domain order, retain both destination approval and controller evidence before moving the unit from staging to production.

Use the staging-to-production handoff as the N-domain checkpoint. The staging record should contain destination approval, complete PID, serial and controller country; the production owner must accept those same fields. If the AP is moved between managed sites, close the first assignment and create a new reviewed destination record instead of merely changing the location field.

Room-side Ethernet and PoE boundary

The 1815w provides one Gigabit uplink, three local Gigabit Ethernet ports and one passive RJ-45 pass-through path. LAN 1 can provide 802.3af Class 0 PoE-out only when the AP itself receives 802.3at; there is no PoE output when the AP receives 802.3af.

Mounting and antenna boundary

The unit uses integrated dual-band antennas with approximately 2 dBi peak gain at 2.4 GHz and 3 dBi at 5 GHz. It installs vertically with AIR-AP-BRACKET-W3; AIR-AP1815W-KIT is a separate spacer and RJ-45 jumper option when the cabling path requires it.

Lifecycle decision

Cisco lists the Aironet 1815 family as end of sale, publishes 2027-04-30 as the last support date and identifies the Catalyst 9105AX Series as the migration family. Existing stock does not extend that support date.

Room deployment evidence worksheet

Controller join evidence

Stage the access point on the controller release intended for production. Retain the controller model, software version, discovery path, authorization method and first successful CAPWAP join. Confirm that configuration download completes and that both radios reach an expected operational state. Remove any temporary staging authorization before handover. This evidence separates an orderable access point from a unit that has actually been proven compatible with the planned controller environment. For the 1815w, retain controller discovery, software download and final join beside the exact serial.

Survey-to-install reconciliation

Attach the approved RF survey location, mounting height, orientation, expected client density, channel width and neighboring-radio assumptions to the order. After installation, compare measured coverage and interference with that design. If ceiling construction, antenna placement or obstructions changed, document the deviation and repeat the affected measurements. This provides a site-specific acceptance reason for the exact unit instead of relying on a family data sheet alone. Tie coverage results to the vertical wall or junction-box position and integrated antenna orientation.

Controlled spare policy

If purchased as a spare, name the protected site population, compatible controller image, storage location, storage conditions and periodic power-on test. Confirm that regulatory token, antenna architecture and mounting parts match the population it protects. Set a final-use review date. A stored unit can become unsuitable while untouched because controller software, country approval, certificates or network architecture may change. Prove a spare against the protected controller or Mobility Express image, bracket, PoE and port design.

Roaming acceptance

Define the neighboring access points and client types used for roaming validation. Record handoff behavior, interruption observed, authentication result and controller events along the intended movement path. Compare the outcome with the site's design target rather than declaring success from static association. Where this unit replaces an older AP, test both entry and exit from its cell so a local improvement does not hide a boundary problem. Document roaming from the room cell into neighboring coverage with client and controller events.

Change-window controls

Document staging evidence, production window, installer, rollback owner and measurable success criteria. Preserve the prior controller or AP state needed for recovery. After the change, close temporary credentials, compare authentication, monitoring and RF results with the approved baseline, and record the final decision. The work is not complete merely because the unit powers on or appears in a controller list. Rollback must restore controller role, country setting, switch port, room cabling and prior RF service.

Capacity observation

Define the expected concurrent clients, application mix, airtime utilization and channel-width assumptions for this location. After commissioning, capture radio utilization, retry behavior and representative throughput during a meaningful load period. Compare the observation with the survey design and state any shortfall. A peak link rate from a data sheet is not a site capacity result and should not replace measured operating evidence. Use measured airtime, retries, wired load and client performance rather than headline PHY rate.

Interference baseline

Preserve the pre-install and post-install noise, neighboring-radio and channel-occupancy observations for the selected location. Record any controller-driven channel change during acceptance. If the regulatory profile limits the channel choices, state how that constraint affected reuse and mitigation. This baseline gives future troubleshooting a reference point and prevents an unrelated interference change from being attributed to the hardware order. Preserve the controller country and enabled-channel export after join or software conversion.

Receiving inspection

At receipt, compare model label, regulatory token, antenna form, quantity, serials and visible condition with the authorized order. Photograph labels before cartons are separated. Quarantine shortages, mixed units, damaged connectors or unapproved substitutions. Do not rely on a distributor description as evidence that the exact Cisco order arrived. Close the inspection only when every physical unit is accounted for. Receiving must identify the wall-plate 1815w and distinguish K9 from K9C before staging.

Related Aironet 1815w order records

Official evidence: Cisco Aironet 1815w data sheet; Cisco 1815w getting-started guide; Cisco wall-plate deployment guide; Cisco 1815 lifecycle bulletin; and Cisco compliance lookup.

AIR-AP1815W-N-K9 Specification

Exact model / SKUAIR-AP1815W-N-K9
Exact Cisco PIDAIR-AP1815W-N-K9
Product familyCisco Aironet 1815w wall-plate access point
Wireless design802.11ac Wave 2; concurrent 2.4 GHz and 5 GHz; 2x2 with two spatial streams
Integrated antenna gainApproximately 2 dBi at 2.4 GHz and 3 dBi at 5 GHz
Network portsOne Gigabit uplink; three local Gigabit ports; one passive RJ-45 pass-through
PoE input802.3af or 802.3at
PoE outputLAN 1 supplies 802.3af Class 0 only when AP input is 802.3at
Software ordercontroller-based K9 order
Regulatory-domain tokenN
Country approvalVerify current approval through Cisco's compliance lookup
MountingVertical wall or junction-box installation with AIR-AP-BRACKET-W3
LifecycleEnd of sale; last support 2027-04-30
Migration familyCisco Catalyst 9105AX Series Access Points
Source matchAIR-AP1815W-N-K9: Aironet 1815w, controller-based K9 order, regulatory-domain token N
Official manufacturer referenceCisco Aironet 1815w official data sheet

AIR-AP1815W-N-K9 Warranty

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Product quality assurance

Quality Assurance
All products sold are original genuine goods, new packaging unopened

Technical support

Free CCIE Expert Technical Support
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Refund policy

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Global shipping services

Diversified and Flexible Transportation Services
Cargo carriers include FedEx, DHL, UPS, Aramex, TNT, EMS

Warranty policy

Standard Policy
1 Year

AIR-AP1815W-N-K9 FAQ

What is AIR-AP1815W-N-K9?

AIR-AP1815W-N-K9 Cisco 1815W 802.11a/g/n/ac Wave 2 Access Point is a CISCO Aironet 1815w Access Point product supplied by YYST Global for enterprise IT procurement and infrastructure projects.

What wireless or client capacity is listed for AIR-AP1815W-N-K9?

For AIR-AP1815W-N-K9, the manufacturer specification lists wireless design as 802.11ac Wave 2; concurrent 2.4 GHz and 5 GHz; 2x2 with two spatial streams.

What interfaces and ports does AIR-AP1815W-N-K9 provide?

For AIR-AP1815W-N-K9, the manufacturer specification lists network ports as One Gigabit uplink; three local Gigabit ports; one passive RJ-45 pass-through.

What are the power requirements for AIR-AP1815W-N-K9?

For AIR-AP1815W-N-K9, the manufacturer specification lists poe input as 802.3af or 802.3at.

Is AIR-AP1815W-N-K9 available from YYST Global?

AIR-AP1815W-N-K9 is in stock at YYST Global. Contact the sales team to confirm the required quantity, exact configuration, delivery destination and current lead time before ordering.

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